Photographing auxiliary lamp and electronic device
Patent Information
- Application Number
- CN202521763817.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-18
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-08-18
AI Technical Summary
[0002]现有智能手机或平板等便携式电子设备一般均具有前置镜头和后置镜头,以方便用户拍照;然而,由于现有的便携式电子设备的前置镜头一般没有设置闪光灯,且后置镜头的闪光灯的光线较弱,在拍照环境光线较暗时,会导致拍照光线较差,影响照片的品质
[0006]本实用新型的拍摄辅助灯具的闪光灯的亮度可以远高于电子设备的后置镜头自带的闪光灯,或者拍摄辅助灯具的闪光灯可以当作电子设备的前置镜头的闪光灯;拍摄辅助灯具的闪光灯可以提供高亮度的灯效, 能在如夕阳或者烟花等弱光环境的场景下,形成与拍摄周边环境光相适应的灯光效果,使得拍照效果得到显著提升,以获得高品质的照明。
Smart Images

Figure CN224732291U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of shooting auxiliary lights for electronic devices, and more particularly to a shooting auxiliary light fixture and an electronic device equipped with the shooting auxiliary light fixture. Background Technology
[0002] Most portable electronic devices such as smartphones and tablets have front and rear cameras to facilitate taking photos. However, since the front camera of existing portable electronic devices generally does not have a flash, and the flash of the rear camera is relatively weak, the lighting in low-light environments will be poor, affecting the quality of the photos. Utility Model Content
[0003] This application provides a shooting auxiliary light fixture and an electronic device equipped with the shooting auxiliary light fixture.
[0004] This application provides a shooting auxiliary light fixture, which includes an auxiliary light structure and a connecting structure. The auxiliary light structure includes a first housing, a first circuit board, and a flash lamp disposed on the first circuit board. The first circuit board is disposed in the inner cavity of the first housing. The connecting structure includes a second housing and a magnetic suction member. The magnetic suction member is disposed in the second housing, and the second housing is rotatably connected to the first housing.
[0005] This application also provides an electronic device, which includes a main body and a shooting auxiliary light fixture. The main body includes a housing and a front lens and a rear lens disposed on the housing. The shooting auxiliary light fixture includes an auxiliary light structure and a connecting structure. The auxiliary light structure includes a first housing, a first circuit board, and a flash lamp disposed on the first circuit board. The first circuit board is disposed in the inner cavity of the first housing. The connecting structure includes a second housing and a magnetic suction member. The magnetic suction member is disposed on the second housing, and the second housing is rotatably connected to the first housing. The connecting structure of the shooting auxiliary light fixture is connected to the housing. The shooting auxiliary light fixture is used to provide supplementary lighting for shooting with the front lens or the rear lens.
[0006] The flash of this shooting auxiliary light fixture can be much brighter than the flash built into the rear camera of an electronic device, or the flash of the shooting auxiliary light fixture can be used as the flash of the front camera of an electronic device. The flash of the shooting auxiliary light fixture can provide high-brightness lighting effects, and can form a lighting effect that adapts to the ambient light in low-light environments such as sunset or fireworks, thereby significantly improving the photo quality and obtaining high-quality lighting. Attached Figure Description
[0007] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly described below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0008] Figure 1 This is a three-dimensional structural diagram of a shooting auxiliary light fixture in one embodiment of this application.
[0009] Figure 2 yes Figure 1 A three-dimensional structural diagram of the shooting auxiliary lighting equipment from another perspective.
[0010] Figure 3 yes Figure 1 A three-dimensional structural breakdown diagram of the shooting auxiliary lighting equipment.
[0011] Figure 4 yes Figure 2 A three-dimensional structural breakdown diagram of the shooting auxiliary lighting equipment.
[0012] Figure 5 yes Figure 1 A three-dimensional structural breakdown diagram of one of the shooting auxiliary lights.
[0013] Figure 6 yes Figure 5 A further three-dimensional structural breakdown diagram of the shooting auxiliary lighting equipment.
[0014] Figure 7 yes Figure 6 A further three-dimensional structural breakdown diagram of the shooting auxiliary lighting equipment.
[0015] Figure 8 yes Figure 2 A three-dimensional structural breakdown diagram of the auxiliary lamp structure.
[0016] Figure 9 yes Figure 8 A three-dimensional structural breakdown diagram of the auxiliary light structure from another perspective.
[0017] Figure 10 yes Figure 2 A three-dimensional structural decomposition diagram of the connection structure in the diagram.
[0018] Figure 11 yes Figure 10 A three-dimensional structural decomposition diagram of the connecting structure from another perspective.
[0019] Figure 12 yes Figure 1 A three-dimensional structural diagram of the shooting auxiliary lighting equipment in its flattened state.
[0020] Figure 13 yes Figure 12 A three-dimensional structural diagram of the shooting auxiliary lighting equipment from another perspective.
[0021] Figure 14 yes Figure 12 A schematic diagram showing the connection between the shooting auxiliary lighting and the electronic equipment.
[0022] Figure 15 yes Figure 1 A three-dimensional structural diagram of one of the folded states of the shooting auxiliary lighting equipment.
[0023] Figure 16 yes Figure 15 A schematic diagram showing the connection between the shooting auxiliary lighting and the electronic equipment.
[0024] Figure 17 yes Figure 1 A three-dimensional structural diagram of another folded state of the shooting auxiliary lighting equipment.
[0025] Figure 18 yes Figure 17 A schematic diagram showing the connection between the shooting auxiliary lighting and the electronic equipment.
[0026] Figure 19 yes Figure 1 A schematic diagram showing the connection between the shooting auxiliary lighting and the electronic equipment.
[0027] Explanation of main labels: 100. Auxiliary lighting for shooting; 20. Auxiliary light structure; 21. First housing; 211. First receiving part; 2112. First inner cavity; 2113. Positioning frame; 2114. First connecting post; 2115. First fixing hole; 2116. Charging hole; 212. Storage slot; 215. Second receiving part; 2150. Fastening slot; 2152. Second inner cavity; 2154. Second connecting post; 2155. Second fixing hole; 2156. First mounting hole; 2157. Second mounting hole; 216. Switch button; 217. Adjustment button; 2158. Mounting part; 2159. Lamp hole; 218. Mounting opening; 2182. First positioning part; 218 4. First clearance groove; 219. Connector; 2192. Cover; 2193. Clearance space; 2194. Second positioning part; 2195. Second clearance groove; 23. First circuit board; 232. Snap-fit hole; 234. First through hole; 235. Indicator light; 2352. Lamp body; 2354. Light guide post; 236. Charging interface; 22. Flash; 24. Light shield; 241. First light shield; 242. Snap-fit post; 243. Second light shield; 245. First locking groove; 246. Second locking groove; 247. Anti-rotation strip; 25. Lens; 251. Anti-rotation groove; 252. Stop groove; 254. Stop surface; 255. Top post; 2 6. Second circuit board; 261. Clearance hole; 262. Fill light; 264. Switch button; 265. Adjustment button; 266. Connector; 267. Second through hole; 27. Battery; 271. Heat insulation pad; 28. Photomask; 282. Clearance hole; 284. Fastening part; 40. Connecting structure; 41. Second housing; 412. Mounting groove; 413. Third clearance groove; 414. Fixing groove; 417. Second locking hole; 43. Magnetic suction part; 44. Mounting part; 442. Positioning groove; 443. Fixing part; 444. Support part; 445. Second countersunk hole; 45. Adhesive part; 46. Cover part; 60. Rotating shaft mechanism; 62. Rotating shaft bracket; 62 1. Connecting plate; 622. Rotation aid; 624. Rotation aid hole; 63. First rotating shaft; 632. First shaft body; 634. First connecting piece; 64. Second rotating shaft; 642. Second shaft body; 644. Second connecting piece; 65. Positioning buckle; 652. First fastening component; 6521. First locking hole; 6523. First clearance groove; 654. Second fastening component; 6541. First countersunk hole; 6543. Second clearance groove; 6545. Snap-fit groove; 66. Cover plate; 300. Electronic device; 310. Main body; 312. Outer shell; 313. Main board; 314. Display screen; 315. Rechargeable battery; 317. Front camera; 318. Rear camera. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0029] Furthermore, the following descriptions of various embodiments are based on the accompanying illustrations and are used to illustrate specific embodiments that can be implemented in this application. Directional terms used in this application, such as "up," "down," "front," "back," "left," "right," "inner," "outer," and "side," are merely for reference to the accompanying illustrations. Therefore, the directional terms used are for better and clearer explanation and understanding of this application, and are not intended to indicate or imply that the referred device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0030] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installed," "connected," "linked," and "set on" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0031] Please refer to the following: Figures 1 to 7 In one embodiment of this utility model, the shooting auxiliary light 100 is used to flash and / or fill light for taking pictures of electronic devices. The shooting auxiliary light 100 includes an auxiliary light structure 20, a connecting structure 40, and a rotating shaft mechanism 60. The auxiliary light structure 20 includes a first housing 21, a first circuit board 23, and a flash lamp 22 disposed on the first circuit board 23. The first circuit board 23 is disposed in the inner cavity of the first housing 21. The connecting structure 40 includes a second housing 41 and a magnetic suction member 43. The magnetic suction member 43 is disposed on the second housing 41, and the second housing 41 is rotatably connected to the first housing 21. Specifically, the second housing 41 is rotatably connected to the first housing 21 through the rotating shaft mechanism 60, so that the first housing 21 can be folded or flattened relative to the second housing 41.
[0032] The connection structure 40 of the shooting auxiliary light fixture 100 is positioned on the housing of the electronic device via a magnetic attachment 43, allowing the auxiliary light structure 20 to be close to the front or rear lens of the electronic device. The shooting auxiliary light fixture 100 and the electronic device are wirelessly connected. This wireless connection can be, but is not limited to, Bluetooth, Wi-Fi, or NFC. The electronic device and the shooting auxiliary light fixture 100 communicate wirelessly. The electronic device transmits instructions to the shooting auxiliary light fixture 100 via a wireless device, and the shooting auxiliary light fixture 100 transmits the execution status of the received instructions back to the shooting auxiliary light fixture 100 via a wireless protocol, thus forming a complete information interaction. The electronic device can control the brightness, color temperature, and other adjustments of the flash 22 of the shooting auxiliary light fixture 100. Specifically, the electronic device can control the flash 22 wirelessly to perform a pre-flash action. When the electronic device takes a picture, it observes the brightness of the surrounding environment by pre-flashing, obtains the corresponding signal, and determines the light intensity that the flash 22 of the shooting auxiliary light 100 needs to emit. This signal is wirelessly transmitted to the shooting auxiliary light 100, so that the flash 22 emits a specific light intensity, forming a lighting effect that is suitable for the ambient light of the shooting environment, thus significantly improving the picture quality of the electronic device.
[0033] The flash 22 of the shooting auxiliary light fixture 100 of this application can be much brighter than the flash built into the rear camera of the electronic device, or the flash 22 of the shooting auxiliary light fixture 100 can be used as the flash of the front camera of the electronic device; specifically, the flash 22 of the shooting auxiliary light fixture 100 can provide a lighting effect of up to 1400 lux, which can form a lighting effect that adapts to the ambient light of the shooting environment in low-light environments such as sunset or fireworks, so as to significantly improve the photo effect and obtain high-quality photos.
[0034] like Figures 5-9As shown, the auxiliary lamp structure 20 also includes a light-shielding member 24 and a lens 25. The lens 25 covers the flash lamp 22, and the light-shielding member 24 is sleeved on the lens 25. One end of the light-shielding member 24 is connected to the first circuit board 23, and the light-shielding member 24 surrounds the flash lamp 22. In this embodiment, the light-shielding member 24 is a cylindrical tube, and the lens 25 is a circular lens, with the cylindrical tube sleeved on the circular lens. In other embodiments, the light-shielding member 24 can also be, but is not limited to, a polygonal tube, an elliptical tube, etc. The light-shielding member 24 and the first circuit board 23 are connected by the cooperation of the snap-fit posts 242 and the snap-fit holes 232. Specifically, the first circuit board 23 has a plurality of snap-fit holes 232 around the flash lamp 22, and one end face of the light-shielding member 24 has a plurality of snap-fit posts 242. The plurality of snap-fit posts 242 are respectively snapped into the plurality of snap-fit holes 232, so that the light-shielding member 24 is fixedly connected to the first circuit board 23. In this embodiment, one end face of the light-shielding member 24 is provided with four locking posts 242, which are evenly spaced around the circumference of the light-shielding member 24. The first circuit board 23 is provided with four locking holes 232 around the flash lamp 22, and the four locking posts 242 are respectively locked into the four locking holes 232. The flash lamp 22 is an LED, located on the axis of the light-shielding member 24. This LED can provide high-brightness light for flashing during shooting. It can still provide effective lighting when the ambient light is above 1000 lux, and can effectively capture scenes such as sunset. The surface of the first circuit board 23 is provided with multiple electronic components, including capacitors, resistors, chips, and a charging interface 236. The flash lamp 22 is located in the middle of one surface of the first circuit board 23, and the charging interface 236 is provided on the other surface of the first circuit board 23 opposite to the flash lamp 22. One surface of the first circuit board 23 is provided with a first through hole 234. A fastener passes through the first through hole 234 and is fixedly connected to the first housing 21 so that the first circuit board 23 is positioned in the inner cavity of the first housing 21. In this embodiment, a plurality of first through holes 234 are provided around one surface of the first circuit board 23, and the plurality of first through holes 234 are arranged at intervals around the circumference of the first circuit board 23. Specifically, two first through holes 234 are provided near the edge of one surface of the first circuit board 23, and the two first through holes 234 are located at opposite ends of the radial direction of the first circuit board 23.
[0035] Since the light-shielding element 24 is fitted around the flash unit 22, and the lens 25 is housed within the cavity of the light-shielding element 24 and covers the flash unit 22, the light-shielding element 24 can change the angle of light projection from the flash unit 22, preventing stray light from interfering with the subject's shooting area and effectively preventing glare and light spot interference. Secondly, the light-shielding element 24 can block part of the light, narrowing the beam range to highlight local details of the subject, making it suitable for scenes requiring precise light control. The lens 25 can focus scattered light in a specific direction through refraction to enhance light intensity; the lens 25 can also adjust the light distribution to achieve precise light control; secondly, the lens 25 can isolate harmful substances such as dust and moisture from the outside world, preventing damage to the flash unit 22; in addition, the lens 25 can reduce the loss of light from the flash unit 22 during propagation, improving light efficiency.
[0036] The light-shielding member 24 includes a first light-shielding part 241 and a second light-shielding part 243. The first light-shielding part 241 is connected to the first circuit board 23, and the second light-shielding part 243 is connected to the end of the first light-shielding part 241 away from the first circuit board 23. The first light-shielding part 241 and the second light-shielding part 243 share a common center line. A plurality of locking posts 242 are respectively provided at the end of the first light-shielding part 241 away from the second light-shielding part 243. In this embodiment, the first light-shielding part 241 is a first light-shielding tube, and the second light-shielding part 243 is a second light-shielding tube. The inner diameter of the first light-shielding part 241 is larger than the inner diameter of the second light-shielding part 243 to form a first locking groove 245 on the inner peripheral surface of the light-shielding member 24; the outer diameter of the first light-shielding part 241 is larger than the outer diameter of the second light-shielding part 243 to form a second locking groove 246 on the outer peripheral surface of the light-shielding member 24. The lens 25 and the light-shielding member 24 are connected by an anti-rotation groove and an anti-rotation strip. The anti-rotation groove is provided on one of the light-shielding member 24 and the lens 25, and the anti-rotation strip is provided on the other of the light-shielding member 24 and the lens 25. In this embodiment, the inner peripheral surface of the first light-shielding part 241 is provided with an anti-rotation strip 247, the length direction of which is parallel to the axis of the first light-shielding part 241. The outer peripheral surface of the lens 25 is provided with an anti-rotation groove 251. The light-shielding member 24 is sleeved on the lens 25, and the anti-rotation strip 247 is positioned in the anti-rotation groove 251 to prevent the lens 25 from rotating relative to the light-shielding member 24. In other embodiments, the inner peripheral surface of the first light-shielding part 241 is provided with an anti-rotation groove, the length direction of which is parallel to the axis of the first light-shielding part 241. The outer peripheral surface of the lens 25 is provided with an anti-rotation strip. The light-shielding member 24 is sleeved on the lens 25, and the anti-rotation strip is positioned in the anti-rotation groove to prevent the lens 25 from rotating relative to the light-shielding member 24.
[0037] A stop groove 252 is provided at the end of the outer peripheral surface of the lens 25 away from the first circuit board 23. The stop groove 252 passes through the end face of the lens 25 away from the first circuit board 23 to form a stop surface 254 on the outer peripheral surface of the lens 25. A stop post 255 is provided on the end face of the lens 25 away from the stop surface 254. The lens 25 is positioned on the first circuit board 23 by a light shield 24, and the stop post 255 abuts against the first circuit board 23 to prevent the lens 25 from moving relative to the light shield 24 along its axial direction. Optionally, a plurality of stop posts 255 are provided on the end face of the lens 25 away from the stop surface 254, and the plurality of stop posts 255 are arranged in a circle around the circumference of the lens 25. In this embodiment, four stop posts 255 are provided on the end face of the lens 25 away from the stop surface 254, and the four stop posts 255 are arranged in a circle around the circumference of the lens 25 at uniform intervals. In other embodiments, the end face of the lens 25 away from the stop surface 254 is provided with two or more abutment posts 255, and the two or more abutment posts 255 are arranged in a circle around the circumference of the lens 25 at uniform intervals.
[0038] The auxiliary light structure 20 also includes a ring-shaped second circuit board 26, with a clearance hole 261 in the center. The second circuit board 26 is fitted onto a light-shielding member 24, which is inserted into the clearance hole 261. The second circuit board 26 is electrically connected to the first circuit board 23. Multiple fill lights 262 are arranged on the surface of the second circuit board 26 facing away from the first circuit board 23, and these fill lights 262 are arranged in a circle around the circumference of the second circuit board 26. Preferably, the multiple fill lights 262 are arranged at even intervals around the clearance hole 261. The fill lights 262 are used to illuminate the scene in low-light conditions, providing auxiliary light for shooting, thereby obtaining correctly exposed images and reasonable image material. Specifically, the fill lights 262 are LEDs, and multiple fill lights 262 are arranged at even intervals around the circumference of the light-shielding member 24. The fill lights 262 of this application can not only control their brightness and color temperature, but also allow setting the color temperature and brightness of the fill lights according to the shooting scene. The outer periphery of the second circuit board 26 is provided with a switch button 264 and an adjustment button 265, both of which are electrically connected to the second circuit board 26 and are arranged at intervals around the circumference of the second circuit board 26. The second circuit board 26 is electrically connected to the first circuit board 23 via a connector 266. One surface of the second circuit board 26 is provided with a second through hole 267, through which a fastener passes and is fixedly connected to the first housing 21, so that the second circuit board 26 is positioned within the cavity of the first housing 21. In this embodiment, a plurality of second through holes 267 are provided around one surface of the second circuit board 26, and the plurality of second through holes 267 are arranged at intervals around the circumference of the second circuit board 26; specifically, four second through holes 267 are provided near the edge of one surface of the second circuit board 26, and the four second through holes 267 are arranged at even intervals around the circumference of the second circuit board 26.
[0039] Optionally, the first housing 21 includes a first receiving portion 211 and a second receiving portion 215. The first receiving portion 211 is connected to the second receiving portion 215, and the first inner cavity 2112 of the first receiving portion 211 communicates with the second inner cavity 2152 of the second receiving portion 215. The first inner cavity 2112 and the second inner cavity 2152 together form the entire inner cavity of the first housing 21. The auxiliary lamp structure 20 also includes a battery 27, which is housed in the first inner cavity 2112 of the first receiving portion 211. The first circuit board 23 and the second circuit board 26 are housed in the second inner cavity 2152 of the second receiving portion 215, and the first circuit board 23 is electrically connected to the battery 27. The battery 27, the first circuit board 23, and the second circuit board 26 are stacked and housed in the inner cavity of the first housing 21, which not only occupies less space but also provides a stable and secure connection. A storage groove 212 is formed between the first receiving portion 211 and the second receiving portion 215, and the second housing 41 can be folded relative to the first housing 21 so that the second housing 41 is housed in the storage groove 212. Specifically, the cross-sectional area of the first receiving portion 211 along the radial direction of the second circuit board 26 is smaller than the cross-sectional area of the second receiving portion 215 along the radial direction of the second circuit board 26, so as to form a receiving groove 212 between the outer surface of the first receiving portion 211 and the outer surface of the second receiving portion 215. The second housing 41 can be accommodated in the receiving groove 212 of the first housing 21, reducing the volume of the shooting auxiliary light and facilitating storage and carrying. In this embodiment, the first receiving portion 211 is a circular disk, and the second receiving portion 215 is an annular cylinder. One side edge of the annular cylinder is connected to the periphery of the circular disk, and the circular disk and the annular cylinder are coaxial. The outer diameter of the first receiving portion 211 is smaller than the outer diameter of the second receiving portion 215, so as to form a receiving groove 212 on the outer surface of the circular disk and the outer surface of the annular cylinder; the inner diameter of the second inner cavity 2152 is larger than the inner diameter of the first inner cavity 2112. A positioning frame 2113 is provided on the inner bottom surface of the first inner cavity 2112 of the first receiving portion 211. The positioning frame 2113 is used to position the battery 27. Preferably, a heat insulation pad 271 is sandwiched between the battery 27 and the inner bottom surface of the first inner cavity 2112 to reduce the heat generated by the battery 27 during operation and its conduction to the first housing 21. A charging hole 2116 is provided on the surface of the first receiving portion 211 opposite to the second receiving portion 215. The charging hole 2116 communicates with the first inner cavity 2112.
[0040] The first circuit board 23 and the second circuit board 26 are both housed in the second inner cavity 2152 of the second receiving portion 215. The first circuit board 23 is connected to the first receiving portion 211, and the second circuit board 26 is connected to the second receiving portion 215. Specifically, the first inner cavity 2112 of the first receiving portion 211 is provided with a first connecting post 2114, and the end face of the first connecting post 2114 is provided with a first fixing hole 2115. A fastener, such as a screw, passes through the first through hole 234 of the first circuit board 23 and is locked in the first fixing hole 2115, so that the first circuit board 23 is fixedly connected to the first housing 21. Optionally, the first inner cavity 2112 of the first receiving portion 211 is provided with a plurality of first connecting posts 2114, and the plurality of first connecting posts 2114 are arranged circumferentially along the first receiving portion 211. A plurality of fasteners pass through a plurality of first through holes 234 of the first circuit board 23 and are locked in a plurality of first fixing holes 2115. In this embodiment, the first inner cavity 2112 of the first receiving portion 211 is provided with two first connecting posts 2114, which are located at opposite radial ends of the first receiving portion 211. Two fasteners, such as screws, pass through the two first through holes 234 of the first circuit board 23 and are locked into the two first fixing holes 2115. In other embodiments, the first circuit board 23 and the first receiving portion 211 can also be fixedly connected by, but not limited to, snap-fitting, adhesive bonding, etc. The second inner cavity 2152 of the second receiving portion 215 is provided with a second connecting post 2154, and the end face of the second connecting post 2154 is provided with a second fixing hole 2155. Fasteners, such as screws, pass through the second through hole 267 of the second circuit board 26 and are locked into the second fixing hole 2155, so that the second circuit board 26 is fixedly connected to the first housing 21. Optionally, the second inner cavity 2152 of the second receiving portion 215 is provided with a plurality of second connecting posts 2154, which are arranged circumferentially around the second receiving portion 215. A plurality of fasteners pass through a plurality of second through holes 267 of the second circuit board 26 and are locked into a plurality of second fixing holes 2155. In this embodiment, the second inner cavity 2152 of the second receiving portion 215 is provided with four second connecting posts 2154, which are evenly spaced around the circumference of the second receiving portion 215. Four fasteners, such as screws, pass through the four second through holes 267 of the second circuit board 26 and are locked into the four second fixing holes 2155. In other embodiments, the second circuit board 26 and the second receiving portion 215 can also be fixedly connected by, but not limited to, snap-fitting or adhesive bonding.
[0041] The outer peripheral surface of the second receiving part 215 is provided with a first mounting hole 2156 and a second mounting hole 2157, both of which are connected to the second inner cavity 2152 of the second receiving part 215. The auxiliary lamp structure 20 also includes a switch button 216 and an adjustment button 217. The switch button 216 is installed in the first mounting hole 2156, and the adjustment button 217 is installed in the second mounting hole 2157. The second inner cavity 2152 of the second receiving part 215 is provided with a mounting part 2158. The outer peripheral surface of the second receiving part 215 near the mounting part 2158 is provided with a plurality of lamp holes 2159. The plurality of lamp holes 2159 are respectively connected to the second inner cavity 2152. The auxiliary lamp structure 20 also includes an indicator light 235. The indicator light 235 is electrically connected to the first circuit board 23. The indicator light 235 includes a plurality of lamp bodies 2352 and a plurality of light guide columns 2354 covering the plurality of lamp bodies 2352. The indicator light 235 is positioned in the mounting part 2158. The plurality of light guide columns 2354 are respectively inserted into the plurality of lamp holes 2159 so that the end of the light guide column 2354 away from the lamp body 2352 is exposed on the outer peripheral surface of the second receiving part 215. The outer peripheral surface of the second receiving part 215 is provided with an installation port 218. The second inner cavity 2152 of the second receiving part 215 is provided with a first positioning part 2182 at the opposite ends of the installation port 218. The second inner cavity 2152 of the second receiving part 215 is provided with a first clearance groove 2184 at the opposite ends of the installation port 218. The two first positioning parts 2182 are respectively close to the two first clearance grooves 2184.
[0042] The first housing 21 also includes a connector 219, which can be installed in the mounting opening 218 of the second receiving portion 215. The connector 219 includes a cover portion 2192 and second positioning portions 2194 located at opposite ends of the cover portion 2192. A clearance space 2193 is provided on the outer side of the cover portion 2192, and a second clearance groove 2195 is provided on the surface of the second positioning portion 2194 facing the second receiving portion 215. When the connector 219 is installed in the mounting opening 218 of the second receiving portion 215, the cover portion 2192 covers the mounting opening 218, the two second positioning portions 2194 are respectively aligned with the two first positioning portions 2182, and the two second clearance grooves 2195 are respectively connected to the two first clearance grooves 2184. Figures 2-4 and Figures 9-10As shown, the rotating shaft mechanism 60 is connected between the first housing 21 and the second housing 41. The second housing 41 can rotate relative to the first housing 21. The included angle between the second housing 41 and the first housing 21 is in the range of 0 degrees to 180 degrees, that is, the included angle between the second housing 41 and the first housing 21 can be any angle between 0 degrees, 180 degrees and 0 degrees-180 degrees. Specifically, the rotating shaft mechanism 60 includes a rotating shaft frame 62, a first rotating shaft 63, a second rotating shaft 64, and a positioning buckle 65. The rotating shaft frame 62 includes a connecting plate 621 and a pair of parallel rotating auxiliary components 622, which are located on opposite sides of the connecting plate 621. Each rotating auxiliary component 622 has a rotating auxiliary hole 624. One end of the first rotating shaft 63 is connected to the first housing 21, and the other end of the first rotating shaft 63 is rotatably inserted into the rotating auxiliary hole 624 of one of the rotating auxiliary components 622. One end of the second rotating shaft 64 is connected to the second housing 41, and the other end of the second rotating shaft 64 is rotatably inserted into the rotating auxiliary hole 624 of the other rotating auxiliary component 622. Specifically, one side of the connecting plate 621 has two opposite ends of a rotating member 622, and the rotating holes 624 of the two rotating members 622 are coaxial; the other side of the connecting plate 621 has two opposite ends of a rotating member 622, and the rotating holes 624 of the two rotating members 622 are coaxial; the first rotating shaft 63 includes a first shaft body 632 and a first connecting piece 634 connected to one end of the first shaft body 632, the first connecting piece 634 is used to connect to the first housing 21, and the end of the first shaft body 632 away from the first connecting piece 634 is rotatably inserted into the rotating hole 624; the second rotating shaft 64 includes a second shaft body 642 and a second connecting piece 644 connected to one end of the second shaft body 642, the second connecting piece 644 is used to connect to the second housing 41, and the end of the second shaft body 642 away from the second connecting piece 644 is rotatably inserted into the corresponding rotating hole 624. The positioning buckle 65 is used to clamp the rotating shaft frame 62. The positioning buckle 65 includes a first fastening member 652 and a second fastening member 654. The first fastening member 652 has a first locking hole 6521 spaced apart on the middle of the surface facing the rotating shaft frame 62. The surface facing the rotating shaft frame 62 of the first fastening member 652 has a first clearance groove 6523 on the opposite sides of the first locking hole 6521. The opposite ends of the first clearance groove 6523 pass through the opposite end faces of the first fastening member 652. The second fastening member 654 has a first countersunk hole 6541 spaced apart on the middle of the surface away from the first fastening member 652. The surface facing the first fastening member 654 has a second clearance groove 6543 on the opposite sides of the first countersunk hole 6541. The opposite ends of the second clearance groove 6543 pass through the opposite end faces of the second fastening member 654.When assembling the rotating shaft mechanism 60, the first shaft bodies 632 of the two first rotating shafts 63 are respectively inserted into the rotation holes 624 of the two auxiliary rotating parts 622 on one side of the rotating shaft frame 62, and the second shaft bodies 642 of the two second rotating shafts 64 are respectively inserted into the rotation holes 624 of the two auxiliary rotating parts 622 on the opposite side of the rotating shaft frame 62; the first fastening member 652 and the second fastening member 654 clamp the rotating shaft frame 62, so that the auxiliary rotating parts 622 on opposite sides of the rotating shaft frame 62 are respectively accommodated in the two first rotating parts 632. The device includes a relief groove 6523 and two second relief grooves 6543, with two first countersunk holes 6541 respectively facing the two first locking holes 6521. Two locking fasteners, such as screws, pass through the two first countersunk holes 6541 and are locked into the two first locking holes 6521, so that the rotating shaft bracket 62, the two first rotating shafts 63, and the two second rotating shafts 64 are all connected to the positioning buckle 65. The first connecting piece 634 and the second connecting piece 644 are respectively exposed on the opposite end faces of the positioning buckle 65. Further, the rotating shaft mechanism 60 also includes a cover plate 66, which is used to cover the two first countersunk holes 6541 of the second fastening member 654. Specifically, the surface of the second fastening member 654 facing away from the first fastening member 652 has a snap-fit groove 6545 around the two first countersunk holes 6541, and the cover plate 66 is connected to the snap-fit groove 6545.
[0043] Optionally, the auxiliary lamp structure 20 further includes a light cover 28, with a recessed hole 282 in the middle of the light cover 28. The light cover 28 is connected to the side of the second receiving portion 215 opposite to the first receiving portion 211, and the end of the lens 25 opposite to the flash lamp 22 is accommodated in the recessed hole 282. The light cover 28 and the second receiving portion 215 are connected by a fastening part and a fastening groove. The fastening part has one of the light cover 28 and the second receiving portion 215, and the fastening groove has the other of the light cover 28 and the second receiving portion 215. In this embodiment, the light cover 28 is an annular cover, with a fastening part 284 on the surface edge of the light cover 28 facing the second receiving portion 215, and a fastening groove 2150 on the inner circumferential surface of the second inner cavity 2152 of the second receiving portion 215. When the light cover 28 covers the second receiving portion 215, the fastening part 284 engages with the fastening groove 2150, so that the light cover 28 is connected to the second receiving portion 215. Optionally, the photomask 28 has a plurality of fastening portions 284 on its surface edge facing the second receiving portion 215. The plurality of fastening portions 284 are arranged in a circle around the circumference of the photomask 28 at intervals. The inner circumferential surface of the second inner cavity 2152 of the second receiving portion 215 has a plurality of fastening grooves 2150, which are arranged in a circle around the circumference of the second receiving portion 215. The plurality of fastening portions 284 can be respectively engaged with the plurality of fastening grooves 2150. In this embodiment, the photomask 28 has four fastening portions 284 on its surface edge facing the second receiving portion 215. The four fastening portions 284 are arranged in a circle around the circumference of the photomask 28 at even intervals. The inner circumferential surface of the second inner cavity 2152 of the second receiving portion 215 has four fastening grooves 2150, which are arranged in a circle around the circumference of the second receiving portion 215. The four fastening portions 284 are respectively engaged with the four fastening grooves 2150. Specifically, the fastening part 284 is an elastic hook. The light cover 28 not only guides light, but also protects the electronic components inside the first housing 21 and prevents water, dust and other impurities from entering the auxiliary lamp structure 20.
[0044] like Figures 2-4 and Figures 10-11As shown, the second housing 41 has a mounting groove 412 on the side opposite to the first housing 21, and the magnetic attractor 43 is housed in the mounting groove 412 to stably position the magnetic attractor 43 on the second housing 41. Specifically, the second housing 41 is a cylindrical ring with an inner diameter larger than the outer diameter of the first receiving portion 211. The second housing 41 can be folded relative to the first housing 21, and the second housing 41 is fitted onto the first receiving portion 211 and housed in the storage groove 212. This not only facilitates the storage of the second housing 41 but also makes the appearance of the shooting auxiliary light fixture 100 more aesthetically pleasing. In this embodiment, the mounting groove 412 surrounds the circumference of the second housing 41, and the magnetic attractor 43 is a ring magnet housed in the mounting groove 412. The outer circumferential surface of the second housing 41 has a third clearance groove 413, which connects to the mounting groove 412. The second housing 41 has fixing grooves 414 on the opposite end faces of the third clearance groove 413 away from the storage groove 212. The second housing 41 has a plurality of second locking holes 417 on the bottom surface of the mounting groove 412, and the plurality of second locking holes 417 are arranged in a circle around the circumference of the mounting groove 412 at intervals. Preferably, the plurality of second locking holes 417 are arranged in a circle around the circumference of the mounting groove 412 at uniform intervals.
[0045] Optionally, the connecting structure 40 further includes a mounting member 44, which is accommodated in a mounting groove 412 and connected to the second housing 41. The mounting member 44 has a positioning groove 442, and the magnetic member 43 is positioned in the positioning groove 442, so that the magnetic member 43 is securely positioned in the second housing 41 by the mounting member 44. Specifically, the mounting member 44 includes a fixing part 443 and a supporting part 444. The fixing part 443 is accommodated in a third recessed groove 413 of the second housing 41, and the positioning groove 442 is located on the supporting part 444. The surfaces of the fixing part 443 facing the magnetic member 43 and the supporting part 444 facing the magnetic member 43 are respectively provided with multiple second countersunk holes 445. When the mounting member 44 is accommodated in the mounting groove 412, the multiple second countersunk holes 445 are respectively aligned with multiple second locking holes 417. In this embodiment, the fixing part 443 and the supporting part 444 are both arc-shaped pieces, and the mounting member 44 is an annular piece.
[0046] Optionally, the connecting structure 40 further includes an adhesive member 45 and a cover member 46. The adhesive member 45 connects the magnetic member 43 and the mounting member 44. Specifically, the adhesive member 45 can be, but is not limited to, double-sided tape, glue, etc. In this embodiment, the adhesive member 45 is an annular double-sided tape. The cover member 46 is connected to the second housing 41 and covers the storage groove 212. In this embodiment, the cover member 46 is an annular covering film. The adhesive member 45 enables the magnetic member 43 to be more stably connected to the mounting member 44, preventing the magnetic member 43 from falling off the mounting member 44; the cover member 46 prevents water, dust, and other impurities from entering the mounting groove 412, thereby protecting the components inside the second housing 41.
[0047] Please refer to the following: Figures 1-13When assembling the shooting auxiliary light fixture 100, two heat insulation pads 271 are respectively attached to the opposite sides of the battery 27, and the battery 27 is housed in the first inner cavity 2112 of the first housing 21. The positioning frame 2113 positions the battery 27, with one heat insulation pad 271 clamped between the battery 27 and the first receiving part 211. The switch button 216 and the adjustment button 217 are respectively installed into the first mounting hole 2156 and the second mounting hole 2157 of the first housing 21. The indicator light 235 is soldered to the first circuit board 23 so that the indicator light 235 is electrically connected to the first circuit board 23. The first circuit board 23 is housed in... Inside the first housing 21, an indicator light 235 is mounted on the mounting part 2158, multiple light guides 2354 are inserted into multiple lamp holes 2159, a charging interface 236 is inserted into a charging hole 2116, two first through holes 234 of the first circuit board 23 are respectively aligned with two first connecting posts 2114 of the first housing 21, and two fasteners such as screws are passed through the two first through holes 234 of the first circuit board 23 and locked into the two first fixing holes 2115, so that the first circuit board 23 is fixedly connected to the first housing 21; another heat insulation pad 271 is clamped between the first circuit board 23 and the battery 27. The first connecting pieces 634 of the two first rotating shafts 63 of the rotating shaft mechanism 60 are respectively housed in the second inner cavity 2152 of the second receiving part 215, so that the two first connecting pieces 634 are respectively connected to the two first positioning parts 2182 of the second receiving part 215; the connector 219 is installed in the mounting port 218 of the second receiving part 215, so that the two second positioning parts 2194 are respectively connected to the two first positioning parts 2182, the two first connecting pieces 634 are positioned between the two first positioning parts 2182 and the two second positioning parts 2194, the end of the first rotating shaft 63 near the first connecting piece 634 is housed in the corresponding first clearance groove 2184, and the cover part 2192 covers the mounting port 218. The lens 25 is housed in the second inner cavity 2152 of the second receiving part 215, so that the lens 25 covers the flash lamp 22. The multiple abutting posts 255 of the lens 25 abut against the surface of the first circuit board 23 away from the battery 27, and the multiple abutting posts 255 surround the flash lamp 22. The light shield 24 is sleeved on the lens 25, so that the multiple locking posts 242 are respectively locked into the multiple locking holes 232 of the first circuit board 23. The anti-rotation strip 247 is inserted into the anti-rotation groove 251 of the lens 25. The stop surface 254 of the lens 25 stops in the first locking groove 245 of the light shield 24, so that the light shield 24 and the lens 25 are positioned on the first circuit board 23.The second circuit board 26 is housed in the second inner cavity 2152 of the second receiving portion 215. The second circuit board 26 is sleeved on the outside of the light shield 24, so that the first circuit board 23 and the second circuit board 26 are electrically connected through the connector 266. Multiple fasteners such as screws pass through multiple second through holes 267 of the second circuit board 26 and are locked into the second fixing holes 2155 of multiple second connecting posts 2154. The switch button 216 is electrically connected to the switch button 264, and the adjustment button 217 is electrically connected to the adjustment button 265. The photomask 28 is covered in the second inner cavity 2152 of the second receiving portion 215. Multiple fastening parts 284 are respectively engaged in multiple fastening slots 2150 of the second receiving portion 215, so that the photomask 28 covers the second circuit board 26. The end face of the lens 25 facing away from the first circuit board 23 and the second light shield 243 are housed in the clearance hole 282 of the photomask 28. The switch button 216 is used to turn the auxiliary light structure 20 on or off, and the adjustment button 217 is used to adjust the brightness and color temperature of the auxiliary light structure 20.
[0048] The second connecting pieces 644 of the two second rotating shafts 64 are respectively inserted into the two fixing slots 414 of the second housing 41. The mounting piece 44 is accommodated in the mounting slot 412 of the second housing 41, so that the fixing part 443 is accommodated in the third clearance slot 413 of the second housing 41. Multiple locking fasteners, such as screws, pass through multiple second countersunk holes 445 and are locked in multiple second locking holes 417, so that the mounting piece 44 is fixed to the second housing 41. The two second connecting pieces 644 are respectively fixedly connected to the second housing 41. The adhesive piece 45 is accommodated in the positioning slot 442 and adhesively bonded to the mounting piece 44. The magnetic suction piece 43 is accommodated in the positioning slot 442 and adhesively bonded to the surface of the adhesive piece 45 facing away from the mounting piece 44. The cover piece 46 covers the mounting slot 412 of the second housing 41, and the cover piece 46 is attached to the surface of the magnetic suction piece 43 facing away from the adhesive piece 45. The connecting structure 40 is rotatably connected to the auxiliary lamp structure 20 through the rotating shaft mechanism 60.
[0049] like Figure 14As shown, this application also provides an electronic device 300, which includes a main body 310 and a shooting auxiliary light 100. The main body 310 includes a housing 312, a motherboard 313, a display screen 314, a rechargeable battery 315, and a front-facing lens 317 and a rear-facing lens 318 disposed on the housing 312. The front-facing lens 317 and the rear-facing lens 318 are electrically connected to the motherboard 313. The motherboard 313 is electrically connected to the display screen 314 and the rechargeable battery 315. The rechargeable battery 315 provides power to the motherboard 313 and the display screen 314. The connection structure 40 of the shooting auxiliary light 100 is connected to the housing 312. In this embodiment, the connection structure 40 is magnetically attached to the housing 312. The shooting auxiliary light 100 and the electronic device 300 are wirelessly connected via Bluetooth. The electronic device 300 can control the shooting auxiliary light 100 via Bluetooth communication so that the shooting auxiliary light 100 can be used to provide supplementary lighting for the front-facing lens 317 or the rear-facing lens 318. Understandably, the shooting auxiliary light 100 is wirelessly linked to the electronic device 300. This link may be, but is not limited to, Bluetooth, Wi-Fi, or NFC. The electronic device 300 and the shooting auxiliary light 100 communicate wirelessly. The electronic device 300 transmits instructions to the shooting auxiliary light through the wireless device. The shooting auxiliary light 100 transmits the execution status of the received instructions back to the electronic device 300 through the wireless protocol, thus forming a complete information interaction.
[0050] The electronic device 300 may be, but is not limited to, portable electronic products such as mobile phones and tablets. The auxiliary light structure 20 of the shooting auxiliary light fixture 100 is used to provide supplementary lighting for the front lens 317 or rear lens 318 of the electronic device 300.
[0051] Compared to the traditional rear camera flashes of electronic devices, which only have a brightness of 100-200 lux and cannot provide effective lighting when ambient light is 1000 lux or even higher, making it difficult to capture certain scenes, such as sunsets, effectively. Furthermore, while there are many professional lighting devices on the market, they are either too bulky or too specialized, placing an excessive burden on electronic devices even when used specifically for shooting. In contrast, the shooting auxiliary light 100 of this application is smaller in size, and its connection structure 40 magnetically attaches to the housing 312 of the electronic device 300. Moreover, the brightness of the flash 22 of the shooting auxiliary light 100 is much higher than that of the automatic flash of the electronic device 300. This not only makes it convenient to carry and use but also provides effective lighting for effective shooting. Electronic device 300 controls the flash 22 and fill light 262 of shooting auxiliary light 100 to adjust color temperature, brightness, etc. Specifically, electronic device 300 controls flash 22 through wireless device to perform pre-flash action of flash 22. Electronic device 300 observes the brightness of the surroundings through pre-flash and gives corresponding signals. The signals are transmitted to electronic device 300 wirelessly to form a closed loop, so that the image algorithm of electronic device 300 can combine with the lighting effect of shooting auxiliary light 100 to take high-quality photos.
[0052] like Figures 14-19 As shown, the connecting structure 40 of the shooting auxiliary light fixture 100 can be magnetically attached to any position of the housing 312. The auxiliary light structure 20 and the connecting structure 40 of the shooting auxiliary light fixture 100 rotate relative to each other through the rotating shaft mechanism 60, so that the included angle between the auxiliary light structure 20 and the connecting structure 40 is any angle ranging from 0 degrees to 180 degrees; Figure 14 As shown, the angle between the auxiliary lamp structure 20 and the connecting structure 40 is 180 degrees. The connecting structure 40 is magnetically attached to the surface of the housing 312 facing away from the display screen 314, so that the light-emitting surface of the lens 25 faces the front lens 317. The auxiliary lamp structure 20 is used to provide supplementary light to the front lens 317. Figures 14-16 As shown, the angle α between the auxiliary light structure 20 and the connecting structure 40 is greater than 90 degrees and less than 180 degrees. The connecting structure 40 is magnetically attached to the surface of the housing 312 facing away from the display screen 314, and the auxiliary light structure 20 is close to the front camera 317. The auxiliary light structure 20 is used to provide supplementary light to the front camera 317. Figure 14 , Figures 17-18 As shown, the angle b between the auxiliary light structure 20 and the connecting structure 40 is less than 90 degrees (0 degrees). The connecting structure 40 is magnetically attached to the surface of the housing 312 facing away from the display screen 314, and the auxiliary light structure 20 is close to the rear lens 318. The auxiliary light structure 20 is used to provide supplementary light to the rear lens 318. Figure 14 and Figure 19As shown, the angle between the auxiliary light structure 20 and the connecting structure 40 is 0 degrees. The connecting structure 40 is magnetically attached to the surface of the housing 312 away from the display screen 314. The auxiliary light structure 20 is close to the rear lens 318. The lens 25 of the auxiliary light structure 20 is oriented in the same direction as the rear lens 318. The auxiliary light structure 20 is used to provide supplementary light to the rear lens 318.
[0053] In use, the connecting structure 40 of the shooting auxiliary light 100 is magnetically attached to the housing 312 of the electronic device 300, and the main body 310 is connected to the auxiliary light structure 20 via a wireless signal. When it is necessary to provide supplemental lighting for the front lens, the auxiliary light structure 20 is adjusted to rotate relative to the connecting structure 40 until the angle between the two is greater than 90 degrees and less than or equal to 180 degrees, preferably the angle between the auxiliary light structure 20 and the connecting structure 40 is equal to 180 degrees, so that the light-emitting surface of the lens 25 is close to the light-receiving aperture of the front lens, and the orientation of the lens 25 is the same as the orientation of the light-receiving aperture of the front lens. The main body 310 performs a pre-flash action through its flash and transmits the ambient brightness to the main body 310. The main body 310 judges the ambient brightness and calculates the required brightness of the flash of the auxiliary light structure 20. The main body 310 transmits the relevant signal to the auxiliary light structure 20, and the auxiliary light structure 20 provides supplemental lighting for the front lens to achieve a perfect match between the ambient light and the brightness of the flash of the auxiliary light structure 20. When supplemental lighting is needed for the rear camera, the auxiliary light structure 20 is adjusted relative to the connecting structure 40 until the angle between them is less than 90 degrees and greater than or equal to 0 degrees, preferably 0 degrees. This allows the light-emitting surface of the lens 25 to be close to the light-receiving aperture of the rear camera, and the orientation of the lens 25 is the same as the orientation of the light-receiving aperture of the rear camera. The main body 310 performs a pre-flash action through its flash and transmits the ambient brightness to the main body 310. The main body 310 judges the ambient brightness and calculates the required brightness of the flash of the auxiliary light structure 20. The main body 310 transmits the relevant signal to the auxiliary light structure 20 so that the auxiliary light structure 20 can provide supplemental lighting for the rear camera, thereby achieving a perfect match between the ambient light and the brightness of the flash of the auxiliary light structure 20. The main body 310 of the electronic device 300 controls the shooting auxiliary light 100 to enable the LED flash of the shooting auxiliary light 100 to achieve ultra-high brightness, so as to meet the pre-flash and main flash delay of the electronic device 300. This solves the problem of charging and discharging delay of xenon lamps in the prior art. At the same time, the combined LED flash and LED fill light of the shooting auxiliary light 100 can achieve the brightness of xenon flash.
[0054] Understandably, the main body 310 of the electronic device 300 precisely sets the color temperature and brightness of the auxiliary light structure 20 via wireless signals. By setting the parameters of the auxiliary light structure 20, a professional shooting environment can be achieved. This professional shooting environment can be, but is not limited to, shooting scenes such as mountains and lakes, waterfalls and seas of clouds, and skylines.
[0055] The electronic device 300 utilizes an external shooting auxiliary light fixture 100 to control a lighting effect of up to 1400 lux. In low-light scenes such as sunsets or fireworks, the shooting auxiliary light fixture 100 can create a lighting effect that adapts to the background light, significantly improving the photographic quality of the electronic device 300. Secondly, the main body 310 can control the shooting auxiliary light fixture 100. Based on the ambient light intensity, the main body 310 performs pre-flash control to regulate the pre-flash. Receiving a signal indicating the ambient light intensity, the main body 310 determines the required light intensity from the shooting auxiliary light fixture 100 and transmits this information wirelessly to the flash unit, which then provides the specified light intensity. Furthermore, by utilizing the external shooting auxiliary light fixture 100, the electronic device 300 precisely controls the parameters, color temperature, and brightness of the flash unit according to a fixed photographic scene, achieving professional photographic results.
[0056] The above are the implementation methods of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications are also considered to be within the protection scope of the present utility model.
Claims
1. A shooting auxiliary light fixture, characterized in that, The shooting auxiliary lighting equipment includes: An auxiliary light structure, comprising a first housing, a first circuit board, and a flash lamp disposed on the first circuit board, wherein the first circuit board is disposed within the cavity of the first housing; and A connection structure, comprising a second housing and a magnetic chuck, wherein the magnetic chuck is disposed on the second housing and the second housing is rotatably connected to the first housing.
2. The shooting auxiliary lighting fixture according to claim 1, characterized in that, The auxiliary light structure also includes a light shield and a lens. The lens covers the flash lamp, the light shield is sleeved on the lens, one end of the light shield is connected to the first circuit board, and the light shield surrounds the flash lamp.
3. The shooting auxiliary lighting fixture according to claim 2, characterized in that, The auxiliary light structure also includes a second circuit board, the second circuit board has a clearance hole in the middle, the light shield is inserted into the clearance hole, the second circuit board is electrically connected to the first circuit board, and the surface of the second circuit board facing away from the first circuit board is provided with multiple supplementary lights.
4. The shooting auxiliary lighting fixture according to claim 3, characterized in that, Both the flash and the fill light are LEDs, the light shield is a light shield tube, the flash is located on the axis of the light shield, and a plurality of the fill lights are arranged in a circle at even intervals around the circumference of the clearance hole.
5. The shooting auxiliary lighting fixture according to claim 3, characterized in that, The first housing includes a first receiving portion and a second receiving portion, the second receiving portion being connected to the first receiving portion, and the first inner cavity of the first receiving portion communicating with the second inner cavity of the second receiving portion; the auxiliary lamp structure also includes a battery, the battery being housed in the first inner cavity, the first circuit board and the second circuit board being housed in the second inner cavity, and the first circuit board being electrically connected to the battery.
6. The shooting auxiliary lighting fixture according to claim 5, characterized in that, The auxiliary light structure also includes a heat insulation pad, which is sandwiched between the battery and the first circuit board.
7. The shooting auxiliary lighting fixture according to claim 5, characterized in that, The auxiliary light structure also includes a light cover, with a clearance hole in the middle of the light cover. The light cover is connected to the side of the second receiving part away from the first receiving part, and the end of the lens away from the flash lamp is housed in the clearance hole.
8. The shooting auxiliary lighting fixture according to claim 1, characterized in that, The second housing has a mounting groove on the side opposite to the first housing, and the magnetic component is housed in the mounting groove.
9. The shooting auxiliary lighting fixture according to claim 8, characterized in that, The connection structure further includes a mounting component, which is housed in the mounting groove and connected to the second housing. The mounting component has a positioning groove, and the magnetic component is positioned in the positioning groove.
10. The shooting auxiliary lighting fixture according to claim 9, characterized in that, The connection structure further includes an adhesive component and a cover component. The adhesive component is connected between the magnetic component and the mounting component, and the cover component is connected to the second housing and covers the mounting groove.
11. The shooting auxiliary lighting fixture according to claim 1, characterized in that, The first housing includes a first receiving portion and a second receiving portion, the first receiving portion being connected to the second receiving portion, and a storage groove being formed between the first receiving portion and the second receiving portion. The second housing is folded relative to the first housing so that the second housing is accommodated in the storage groove.
12. The shooting auxiliary lighting fixture according to claim 11, characterized in that, The first receiving part is a circular disc, and the second receiving part is an annular cylinder. The outer diameter of the first receiving part is smaller than the outer diameter of the second receiving part, so as to form the receiving groove on the outer surface of the circular disc and the outer surface of the annular cylinder. The second housing is an annular cylinder, and the inner diameter of the second housing is larger than the outer diameter of the first receiving part. The second housing is sleeved on the first receiving part.
13. The shooting auxiliary lighting fixture according to claim 1, characterized in that, The shooting auxiliary light also includes a rotating mechanism, which is connected between the first housing and the second housing, and the included angle between the first housing and the second housing ranges from 0 degrees to 180 degrees.
14. The shooting auxiliary lighting fixture according to claim 13, characterized in that, The rotating shaft mechanism includes a rotating shaft frame, a first rotating shaft, and a second rotating shaft. The rotating shaft frame includes a connecting plate and a pair of parallel, spaced-apart auxiliary rotating components. Each auxiliary rotating component has an auxiliary rotating hole. The pair of auxiliary rotating components are located on opposite sides of the connecting plate. One end of the first rotating shaft is connected to the first housing, and the other end of the first rotating shaft is rotatably inserted into the auxiliary rotating hole of one of the auxiliary rotating components. One end of the second rotating shaft is connected to the second housing, and the other end of the second rotating shaft is rotatably inserted into the auxiliary rotating hole of the other auxiliary rotating component.
15. An electronic device, characterized in that, The electronic device includes a main body and a shooting auxiliary light fixture as described in any one of claims 1-14. The main body includes a housing and a front lens and a rear lens disposed on the housing. The shooting auxiliary light fixture is connected to the housing via a connection structure. The shooting auxiliary light fixture is used to provide supplementary lighting for shooting with the front lens or the rear lens.